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Anaerobic digestion of microalgal biomass with ultrasonic disintegration.

机译:超声分解对微藻生物质的厌氧消化。

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The use of photosynthetic microalgae for nutrient removal and biofuel production has been widely discussed. Anaerobic digestion of waste microalgal biomass to produce biogas is a promising technology for bioenergy production. However, the methane yield from this anaerobic process was limited because of the hard cell wall of Chlorella vulgaris. The use of ultrasound has proven to be successful at improving the disintegration and anaerobic biodegradability of Chlorella vulgaris. Ultrasonic pretreatment in the range of 5-200 J ml-1 was applied to waste microalgal biomass, which was then used for batch digestion. Ultrasound techniques were successful and showed higher soluble COD at higher applied energy. During batch digestion, cell disintegration due to ultrasound increased in terms of specific biogas production and the degradation rate. Compared to the untreated sample, the specific biogas production was increased in the ultrasound-treated sample by 90% at an energy dose of 200 J ml-1. For the disintegrated samples, volatile solids reduction was also increased according to the energy input and degradation. These results indicate that the hydrolysis of microalgal cells is the rate-limiting step in the anaerobic digestion of microalgal biomass.Digital Object Identifier http://dx.doi.org/10.1016/j.ibiod.2013.03.035
机译:光合微藻用于营养去除和生物燃料生产的用途已被广泛讨论。废微藻生物质的厌氧消化以生产沼气是一种用于生物能源生产的有前途的技术。然而,由于小球藻的硬细胞壁,该厌氧过程的甲烷产量受到限制。超声波的使用已被证明可以成功地改善小球藻的分解和厌氧生物降解性。对废微藻生物质进行5-200 J ml -1 的超声波预处理,然后用于分批消化。超声波技术是成功的,并且在较高的施加能量下显示出较高的可溶性COD。在分批消化过程中,超声产生的细胞分解会增加比沼气的产生量和降解率。与未处理的样品相比,超声处理的样品在200 J ml -1 的能量剂量下比沼气产量增加了90%。对于崩解的样品,根据能量输入和降解,挥发性固体的减少量也增加了。这些结果表明,微藻细胞的水解是微藻生物质厌氧消化中的限速步骤。数字对象标识符http://dx.doi.org/10.1016/j.ibiod.2013.03.035

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